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Interferogram formation in the presence of complex and large deformation

机译:复杂大变形下的干涉图形成

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摘要

Sierra Negra volcano in Isabela island, Galapagos, erupted from October 22 to October 30 in 2005. During the 8 days of eruption, the center of Sierra Negra's caldera subsided about 5.4 meters. Three hours prior to the onset of the eruption, an earthquake (Mw 5.4) occurred, near the caldera. Because of the large and complex phase gradient due to the huge subsidence and the earthquake, it is difficult to form an interferogram inside the caldera that spans the eruption. The deformation is so large and spatially variable that the approximations used in existing InSAR software (ROI, ROI_PAC, DORIS, GAMMA) cannot properly coregister SAR image pairs spanning the eruption. We have developed here a two-step algorithm that can form intra-caldera interferograms from these data. The first step involves a "rubber-sheeting'' SAR image coregistration. In the second step we use range offset estimates to mitigate the steep phase gradient. Using this new algorithm, we retrieve an interferogram with the best coverage to date inside the caldera of Sierra Negra.
机译:2005年10月22日至10月30日,加拉帕戈斯群岛伊莎贝拉岛的内格拉火山爆发。在喷发的8天中,内格拉火山口的中心沉降约5.4米。爆发前三个小时,火山口附近发生了地震(Mw 5.4)。由于巨大的下陷和地震造成的相变梯度很大且很复杂,因此很难在横跨火山喷发的火山口内部形成干涉图。变形是如此之大,并且在空间上是可变的,以至于现有InSAR软件(ROI,ROI_PAC,DORIS,GAMMA)中使用的近似值无法正确地共配齐整个喷发的SAR图像对。我们在这里开发了一种两步算法,可以根据这些数据形成破火山口内干涉图。第一步涉及“橡胶片” SAR图像增强,第二步我们使用距离偏移估计来缓解陡峭的相位梯度,使用这种新算法,我们可以检索到迄今为止在角膜缘内的覆盖率最高的干涉图。内格拉山脉。

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